Q.A ray of light PQ travels upward and to the right and strikes a concave mirror at a point Q that lies above the principal axis. The straight incident ray passes through the principal focus F of the mirror on its way to Q (the centre of curvature C and the focus F both lie on the principal axis to the left of the reflecting surface, with C farther from the mirror than F). At Q, four candidate directions for the reflected ray are marked: ray 1 points up and to the left (steeply, well above the axis); ray 2 points horizontally to the left, parallel to the principal axis; ray 3 points down and to the left; and ray 4 points horizontally to the right along the axis, back towards the mirror. Which of the four candidate directions correctly represents the reflected ray?
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Start your 14-day free trial to unlock the full solution →One of the standard construction rays for a concave mirror states that a ray passing through the principal focus is reflected parallel to the principal axis. The incident ray PQ is drawn through , so after reflection it must travel parallel to the axis, on the upper side, directed away from the mirror. That is ray 2.
Concept
For a spherical mirror the law of reflection (, measured from the local normal, which is the radius CQ) produces three convenient construction rays:
- A ray parallel to the axis reflects through .
- A ray through reflects parallel to the axis (the reverse of rule 1).
- A ray through the centre of curvature retraces its path.
Why this rule applies
The incident ray PQ is drawn so that it passes through the focus before meeting the mirror at . This is exactly the situation of rule 2, so the reflected ray leaves parallel to the principal axis.
Working out the direction …
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